Commit Graph

2994 Commits

Author SHA1 Message Date
Johan Hedberg
642ac7745a Bluetooth: Fix missing check for SMP session in smp_user_confirm_reply
The smp_user_confirm_reply() function is called whenever user space
sends a user confirmation reply mgmt command. In case of a misbehaving
user space, or if the SMP session was removed by the time the command
comes it is important that we return an appropriate error and do not try
to access the non-existent SMP context. This patch adds the appropriate
check for the HCI_CONN_LE_SMP_PEND flag before proceeding further.

Signed-off-by: Johan Hedberg <johan.hedberg@intel.com>
Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
2014-07-03 17:42:47 +02:00
Johan Hedberg
a9999348e7 Bluetooth: Remove unnecessary hci_dev_unlock for smp_user_confirm_reply
Now that the SMP context has it's own crypto handle it doesn't need to
lock the hci_dev anymore for most operations. This means that it is safe
to call smp_user_confirm_reply with the lock already held.

Signed-off-by: Johan Hedberg <johan.hedberg@intel.com>
Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
2014-07-03 17:42:47 +02:00
Johan Hedberg
ec70f36f8b Bluetooth: Update SMP crypto functions to take the SMP context
Passing the full SMP context instead of just the crypto context lets us
use the crypto handle from the context which in turn removes the need to
lock the hci_dev. Passing the SMP context instead of just the crypto
handle allows a bit more detailed logging which is helpful in
multi-adapter scenarios.

Signed-off-by: Johan Hedberg <johan.hedberg@intel.com>
Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
2014-07-03 17:42:47 +02:00
Johan Hedberg
6a7bd103c8 Bluetooth: Add dedicated AES instance for each SMP context
Many places have to be extra careful to not hold the hdev lock when
calling into the SMP code. This is because the SMP crypto functions use
the crypto handle that's part of the hci_dev struct. Giving the SMP
context its own handle helps simplifying the locking logic and removes
the risk for deadlocks.

Signed-off-by: Johan Hedberg <johan.hedberg@intel.com>
Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
2014-07-03 17:42:47 +02:00
Johan Hedberg
31dd624e1c Bluetooth: Fix missing hdev locking in smp_cmd_ident_addr_info
The hdev lock must be held before calling into smp_distribute_keys. Also
things such as hci_add_irk() require the lock. This patch fixes the
issue by adding the necessary locking into the smp_cmd_ident_addr_info
function.

Signed-off-by: Johan Hedberg <johan.hedberg@intel.com>
Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
2014-07-03 17:42:47 +02:00
Johan Hedberg
4dae27983e Bluetooth: Convert hci_conn->link_mode into flags
Since the link_mode member of the hci_conn struct is a bit field and we
already have a flags member as well it makes sense to merge these two
together. This patch moves all used link_mode bits into corresponding
flags. To keep backwards compatibility with user space we still need to
provide a get_link_mode() helper function for the ioctl's that expect a
link_mode style value.

Signed-off-by: Johan Hedberg <johan.hedberg@intel.com>
Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
2014-07-03 17:42:46 +02:00
Marcel Holtmann
985d904902 Bluetooth: Remove ssp_debug_mode debugfs option
The ssp_debug_mode debugfs option for developers is no longer
needed. Support for using Secure Simple Pairing (SSP) debug
mode is exposed by the management interface now.

Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
Signed-off-by: Johan Hedberg <johan.hedberg@intel.com>
2014-07-03 17:42:46 +02:00
Johan Hedberg
b97109790c Bluetooth: Add support for mode 0x02 for mgmt_set_debug_keys
This patch adds a new valid mode 0x02 for the mgmt_set_debug_keys
command. The 0x02 mode sets the HCI_USE_DEBUG_KEYS flag which makes us
always use debug keys for pairing.

Signed-off-by: Johan Hedberg <johan.hedberg@intel.com>
Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
2014-07-03 17:42:46 +02:00
Johan Hedberg
3769972bad Bluetooth: Add a new HCI_USE_DEBUG_KEYS flag
To pave the way for actively using debug keys for pairing this patch
adds a new HCI_USE_DEBUG_KEYS flag for the purpose. When the flag is set
we issue a HCI_Write_SSP_Debug mode whenever HCI_Write_SSP_Mode(0x01)
has been issued as well as before issuing a HCI_Write_SSP_Mode(0x00)
command.

Signed-off-by: Johan Hedberg <johan.hedberg@intel.com>
Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
2014-07-03 17:42:46 +02:00
Johan Hedberg
58e9293c4e Bluetooth: Fix ignoring debug keys in mgmt_load_link_keys
We should never allow user space to feed back debug keys to the kernel.
If the user desires to use debug keys require setting the appropriate
debug keys mode and performing a new pairing.

Signed-off-by: Johan Hedberg <johan.hedberg@intel.com>
Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
2014-07-03 17:42:46 +02:00
Johan Hedberg
af6a9c3213 Bluetooth: Convert hcon->flush_key to a proper flag
There's no point in having boolean variables in the hci_conn struct
since it already has a flags member. This patch converts the flush_key
member into a proper flag.

Signed-off-by: Johan Hedberg <johan.hedberg@intel.com>
Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
2014-07-03 17:42:46 +02:00
Johan Hedberg
6d5650c4e5 Bluetooth: Don't store debug keys if flag for them is not set
Instead of waiting for a disconnection to occur to remove a debug key
simply never store it in the list to begin with. This means we can also
remove the debug keys check when looking up keys in
hci_link_key_request_evt().

Signed-off-by: Johan Hedberg <johan.hedberg@intel.com>
Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
2014-07-03 17:42:45 +02:00
Johan Hedberg
0663b297f1 Bluetooth: Rename HCI_DEBUG_KEYS to HCI_KEEP_DEBUG_KEYS
We're planning to add a flag to actively use debug keys in addition to
simply just accepting them, which makes the current generically named
DEBUG_KEYS flag a bit confusing. Since the flag in practice affects
whether the kernel keeps debug keys around or not rename it to
HCI_KEEP_DEBUG_KEYS.

Signed-off-by: Johan Hedberg <johan.hedberg@intel.com>
Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
2014-07-03 17:42:45 +02:00
Johan Hedberg
7652ff6aea Bluetooth: Move mgmt event sending out from hci_add_link_key()
There are two callers of hci_add_link_key(). The first one is the HCI
Link Key Notification event and the second one the mgmt code that
receives a list of link keys from user space. Previously we've had the
hci_add_link_key() function being responsible for also emitting a mgmt
signal but for the latter use case this should not happen. Because of
this a rather awkward new_key paramter has been passed to the function.

This patch moves the mgmt event sending out from the hci_add_link_key()
function, thereby making the code a bit more understandable.

Signed-off-by: Johan Hedberg <johan.hedberg@intel.com>
Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
2014-07-03 17:42:45 +02:00
Johan Hedberg
567fa2aa3d Bluetooth: Update hci_add_link_key() to return pointer to key
By returning the added (or updated) key we pave the way for further
refactoring (in subsequent patches) that allows moving the mgmt event
sending out from this function (and thereby removal of the awkward
new_key parameter).

Signed-off-by: Johan Hedberg <johan.hedberg@intel.com>
Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
2014-07-03 17:42:45 +02:00
Marcel Holtmann
80afeb6cec Bluetooth: Add support LE slave connection update procedure
When the current LE connection parameters of a slave connection do not
match up with the controller defined values, then trigger the connection
update procedure to allow adjusting them.

Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
Signed-off-by: Johan Hedberg <johan.hedberg@intel.com>
2014-07-03 17:42:45 +02:00
Marcel Holtmann
a720d7351e Bluetooth: Set default min/max connection interval for LE slaves
For all incoming LE connections, the minimum and maximum connection
interval is a value that should be copied from the controller default
values. This allows to properly check if the resulting connection
interval of a newly established connection is in the range we are
expecting.

Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
Signed-off-by: Johan Hedberg <johan.hedberg@intel.com>
2014-07-03 17:42:45 +02:00
Marcel Holtmann
1855d92dce Bluetooth: Track LE connection parameter update event
When the LE controller changes its connection parameters, it will send
a connection parameter update event. Make sure that the new set of
parameters are stored in hci_conn struct and thus will properly update
the previous values retrieved from the connection complete event.

Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
Signed-off-by: Johan Hedberg <johan.hedberg@intel.com>
2014-07-03 17:42:44 +02:00
Marcel Holtmann
e04fde60ef Bluetooth: Store current LE connection parameters in hci_conn struct
The LE connection parameters are needed later on to be able to decide
if it is required to trigger connection update procedures. So when the
connection has been established successfully, store the current used
parameters in hci_conn struct.

Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
Signed-off-by: Johan Hedberg <johan.hedberg@intel.com>
2014-07-03 17:42:44 +02:00
Jukka Rissanen
7f11825382 Bluetooth: 6LoWPAN: Remove network devices when unloading
When the module is unloaded, unregister the network device
so that the system does not try to access non-existing device.

Signed-off-by: Jukka Rissanen <jukka.rissanen@linux.intel.com>
Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
2014-07-03 17:42:44 +02:00
Jukka Rissanen
18d93c1766 Bluetooth: 6LoWPAN: Count module usage
Count how many 6LoWPAN connections there exists so that we
do not unload the module if there are still connections alive.

Signed-off-by: Jukka Rissanen <jukka.rissanen@linux.intel.com>
Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
2014-07-03 17:42:44 +02:00
Jukka Rissanen
5547e48c09 Bluetooth: 6LoWPAN: Create a kernel module
Instead of adding the 6LoWPAN functionality to Bluetooth module,
we create a separate kernel module for it.

Usage:

In the slave side do this:

$ modprobe bluetooth_6lowpan
$ echo 62 > /sys/kernel/debug/bluetooth/6lowpan_psm
$ hciconfig hci0 leadv

In the master side do this:

$ modprobe bluetooth_6lowpan
$ echo 62 > /sys/kernel/debug/bluetooth/6lowpan_psm
$ echo 'connect E0:06:E6:B7:2A:73 1' > \
                  /sys/kernel/debug/bluetooth/6lowpan_control

The 6LoWPAN functionality can be controlled by psm value. If it
is left to 0, then the module is disabled and all the 6LoWPAN
connections are dropped if there were any. In the above example,
the psm value is just an example and not a real value for
6LoWPAN service. The real psm value is yet to be defined in
Bluetooth specification.

The 6lowpan controlling interface is a temporary solution
until the specifications are ready.

Signed-off-by: Jukka Rissanen <jukka.rissanen@linux.intel.com>
Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
2014-07-03 17:42:44 +02:00
Jukka Rissanen
6b8d4a6a03 Bluetooth: 6LoWPAN: Use connected oriented channel instead of fixed one
Create a CoC dynamically instead of one fixed channel for communication
to peer devices.

Signed-off-by: Jukka Rissanen <jukka.rissanen@linux.intel.com>
Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
2014-07-03 17:42:44 +02:00
Jukka Rissanen
0498878b18 Bluetooth: Provide L2CAP ops callback for memcpy_fromiovec
The highly optimized TX path for L2CAP channels and its fragmentation
within the HCI ACL packets requires to copy data from user provided
IO vectors and also kernel provided memory buffers.

This patch allows channel clients to provide a memcpy_fromiovec callback
to keep this optimized behavior, but adapt it to kernel vs user memory
for the TX path. For all kernel internal L2CAP channels, a default
implementation is provided that can be referenced.

In case of A2MP, this fixes a long-standing issue with wrongly accessing
kernel memory as user memory.

This patch originally by Marcel Holtmann.

Signed-off-by: Jukka Rissanen <jukka.rissanen@linux.intel.com>
Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
2014-07-03 17:42:43 +02:00
Marcel Holtmann
111902f723 Bluetooth: Use separate dbg_flags to special debugfs options
All the special settings configured via debugfs are either developer
only options or temporary solutions. To not clutter the standard flags,
move them to their own dbg_flags entry.

Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
Signed-off-by: Johan Hedberg <johan.hedberg@intel.com>
2014-07-03 17:42:43 +02:00
Johan Hedberg
d97c9fb0c8 Bluetooth: Fix checking for master LTKs
When the rename of STK_SLAVE to simply STK happened we missed this place
in the ltk_type_master function. Now, checking for master is as simple
as checking whether the type is SMP_LTK. The helper function is kept
around for better readability in the (right now three) callers and for
simpler extension with new key types in the future.

Signed-off-by: Johan Hedberg <johan.hedberg@intel.com>
Tested-by: Lukasz Rymanowski <lukasz.rymanowski@tieto.com>
Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
2014-07-03 17:42:43 +02:00
Johan Hedberg
4ec86d4c86 Bluetooth: Fix validating IO capability values in mgmt commands
The valid range of IO capabilities for the Set IO Capability and Pair
Device mgmt commands is 0-4 (4 being the KeyboarDisplay capability for
SMP). We should return an invalid parameters error if user space gives
us a value outside of this range.

Signed-off-by: Johan Hedberg <johan.hedberg@intel.com>
Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
2014-07-03 17:42:43 +02:00
Johan Hedberg
8a2936f44a Bluetooth: Add flexible buffer byte order swapping function
Since the SMP code needs to swap ordering of variable length buffers add
a convenience function that can be used for any length buffer.

Signed-off-by: Johan Hedberg <johan.hedberg@intel.com>
Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
2014-07-03 17:42:43 +02:00
Johan Hedberg
533e35d401 Bluetooth: Convert SMP flags into an enum
There's no reason to have explicit values for these flags. Convert them
to an enum to be consistent with other similar flags.

Signed-off-by: Johan Hedberg <johan.hedberg@intel.com>
Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
2014-07-03 17:42:42 +02:00
Johan Hedberg
2ceba53936 Bluetooth: Remove HCI prefix from SMP LTK defines
The LTK type has really nothing to do with HCI so it makes more sense to
have these in smp.h than hci.h. This patch moves the defines to smp.h
and removes the HCI_ prefix in the same go.

Signed-off-by: Johan Hedberg <johan.hedberg@intel.com>
Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
2014-07-03 17:42:42 +02:00
Johan Hedberg
7d5843b7b7 Bluetooth: Remove unnecessary SMP STK define
We never store the "master" type of STKs since we request encryption
directly with them so we only need one STK type (the one that's
looked-up on the slave side). Simply remove the unnecessary define and
rename the _SLAVE one to the shorter form.

Signed-off-by: Johan Hedberg <johan.hedberg@intel.com>
Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
2014-07-03 17:42:42 +02:00
Johan Hedberg
c29d244417 Bluetooth: Fix missing NULL check for smp_chan_create() return value
The smp_chan_create function may return NULL, e.g. in the case of memory
allocation failure, so we always need to check for this.

Signed-off-by: Johan Hedberg <johan.hedberg@intel.com>
Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
2014-07-03 17:42:42 +02:00
Marcel Holtmann
65cc2b49db Bluetooth: Use struct delayed_work for HCI command timeout
Since the whole HCI command, event and data packet processing has been
migrated to use workqueues instead of tasklets, it makes sense to use
struct delayed_work instead of struct timer_list for the timeout
handling. This patch converts the hdev->cmd_timer to use workqueue
as well.

Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
Signed-off-by: Johan Hedberg <johan.hedberg@intel.com>
2014-07-03 17:42:42 +02:00
Marcel Holtmann
d9fbd02be5 Bluetooth: Use explicit header and body length for L2CAP SKB allocation
When allocating the L2CAP SKB for transmission, provide the upper layers
with a clear distinction on what is the header and what is the body
portion of the SKB.

Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
Signed-off-by: Johan Hedberg <johan.hedberg@intel.com>
2014-07-03 17:42:42 +02:00
Marcel Holtmann
8d46321c4f Bluetooth: Assign L2CAP socket priority when allocating SKB
The SKB for L2CAP sockets are all allocated in a central callback
in the socket support. Instead of having to pass around the socket
priority all the time, assign it to skb->priority when actually
allocating the SKB.

Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
Signed-off-by: Johan Hedberg <johan.hedberg@intel.com>
2014-07-03 17:42:41 +02:00
Marcel Holtmann
67f86a45bb Bluetooth: Use const for struct l2cap_ops field
The struct l2cap_ops field should not allow any modifications and thus
it is better declared as const.

Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
Signed-off-by: Johan Hedberg <johan.hedberg@intel.com>
2014-07-03 17:42:41 +02:00
Lukasz Rymanowski
1d56dc4f5f Bluetooth: Fix for ACL disconnect when pairing fails
When pairing fails hci_conn refcnt drops below zero. This cause that
ACL link is not disconnected when disconnect timeout fires.

Probably this is because l2cap_conn_del calls l2cap_chan_del for each
channel, and inside l2cap_chan_del conn is dropped. After that loop
hci_chan_del is called which also drops conn.

Anyway, as it is desrcibed in hci_core.h, it is known that refcnt
drops below 0 sometimes and it should be fine. If so, let disconnect
link when hci_conn_timeout fires and refcnt is 0 or below. This patch
does it.

This affects PTS test SM_TC_JW_BV_05_C

Logs from scenario:

[69713.706227] [6515] pair_device:
[69713.706230] [6515] hci_conn_add: hci0 dst 00:1b:dc:06:06:22
[69713.706233] [6515] hci_dev_hold: hci0 orig refcnt 8
[69713.706235] [6515] hci_conn_init_sysfs: conn ffff88021f65a000
[69713.706239] [6515] hci_req_add_ev: hci0 opcode 0x200d plen 25
[69713.706242] [6515] hci_prepare_cmd: skb len 28
[69713.706243] [6515] hci_req_run: length 1
[69713.706248] [6515] hci_conn_hold: hcon ffff88021f65a000 orig refcnt 0
[69713.706251] [6515] hci_dev_put: hci0 orig refcnt 9
[69713.706281] [8909] hci_cmd_work: hci0 cmd_cnt 1 cmd queued 1
[69713.706288] [8909] hci_send_frame: hci0 type 1 len 28
[69713.706290] [8909] hci_send_to_monitor: hdev ffff88021f0c7000 len 28
[69713.706316] [5949] hci_sock_recvmsg: sock ffff8800941a9680, sk ffff88012bf4d000
[69713.706382] [5949] hci_sock_recvmsg: sock ffff8800941a9680, sk ffff88012bf4d000
[69713.711664] [8909] hci_rx_work: hci0
[69713.711668] [8909] hci_send_to_monitor: hdev ffff88021f0c7000 len 6
[69713.711680] [8909] hci_rx_work: hci0 Event packet
[69713.711683] [8909] hci_cs_le_create_conn: hci0 status 0x00
[69713.711685] [8909] hci_sent_cmd_data: hci0 opcode 0x200d
[69713.711688] [8909] hci_req_cmd_complete: opcode 0x200d status 0x00
[69713.711690] [8909] hci_sent_cmd_data: hci0 opcode 0x200d
[69713.711695] [5949] hci_sock_recvmsg: sock ffff8800941a9680, sk ffff88012bf4d000
[69713.711744] [5949] hci_sock_recvmsg: sock ffff8800941a9680, sk ffff88012bf4d000
[69713.818875] [8909] hci_rx_work: hci0
[69713.818889] [8909] hci_send_to_monitor: hdev ffff88021f0c7000 len 21
[69713.818913] [8909] hci_rx_work: hci0 Event packet
[69713.818917] [8909] hci_le_conn_complete_evt: hci0 status 0x00
[69713.818922] [8909] hci_send_to_control: len 19
[69713.818927] [5949] hci_sock_recvmsg: sock ffff8800941a9680, sk ffff88012bf4d000
[69713.818938] [8909] hci_conn_add_sysfs: conn ffff88021f65a000
[69713.818975] [6450] bt_sock_poll: sock ffff88005e758500, sk ffff88010323b800
[69713.818981] [6515] hci_sock_recvmsg: sock ffff88005e75a080, sk ffff88010323ac00
...
[69713.819021] [8909] hci_dev_hold: hci0 orig refcnt 10
[69713.819025] [8909] l2cap_connect_cfm: hcon ffff88021f65a000 bdaddr 00:1b:dc:06:06:22 status 0
[69713.819028] [8909] hci_chan_create: hci0 hcon ffff88021f65a000
[69713.819031] [8909] l2cap_conn_add: hcon ffff88021f65a000 conn ffff880221005c00 hchan ffff88020d60b1c0
[69713.819034] [8909] l2cap_conn_ready: conn ffff880221005c00
[69713.819036] [5949] hci_sock_recvmsg: sock ffff8800941a9680, sk ffff88012bf4d000
[69713.819037] [8909] smp_conn_security: conn ffff880221005c00 hcon ffff88021f65a000 level 0x02
[69713.819039] [8909] smp_chan_create:
[69713.819041] [8909] hci_conn_hold: hcon ffff88021f65a000 orig refcnt 1
[69713.819043] [8909] smp_send_cmd: code 0x01
[69713.819045] [8909] hci_send_acl: hci0 chan ffff88020d60b1c0 flags 0x0000
[69713.819046] [5949] hci_sock_recvmsg: sock ffff8800941a9900, sk ffff88012bf4e800
[69713.819049] [8909] hci_queue_acl: hci0 nonfrag skb ffff88005157c100 len 15
[69713.819055] [5949] hci_sock_recvmsg: sock ffff8800941a9900, sk ffff88012bf4e800
[69713.819057] [8909] l2cap_le_conn_ready:
[69713.819064] [8909] l2cap_chan_create: chan ffff88005ede2c00
[69713.819066] [8909] l2cap_chan_hold: chan ffff88005ede2c00 orig refcnt 1
[69713.819069] [8909] l2cap_sock_init: sk ffff88005ede5800
[69713.819072] [8909] bt_accept_enqueue: parent ffff880160356000, sk ffff88005ede5800
[69713.819074] [8909] __l2cap_chan_add: conn ffff880221005c00, psm 0x00, dcid 0x0004
[69713.819076] [8909] l2cap_chan_hold: chan ffff88005ede2c00 orig refcnt 2
[69713.819078] [8909] hci_conn_hold: hcon ffff88021f65a000 orig refcnt 2
[69713.819080] [8909] smp_conn_security: conn ffff880221005c00 hcon ffff88021f65a000 level 0x01
[69713.819082] [8909] l2cap_sock_ready_cb: sk ffff88005ede5800, parent ffff880160356000
[69713.819086] [8909] le_pairing_complete_cb: status 0
[69713.819091] [8909] hci_tx_work: hci0 acl 10 sco 8 le 0
[69713.819093] [8909] hci_sched_acl: hci0
[69713.819094] [8909] hci_sched_sco: hci0
[69713.819096] [8909] hci_sched_esco: hci0
[69713.819098] [8909] hci_sched_le: hci0
[69713.819099] [8909] hci_chan_sent: hci0
[69713.819101] [8909] hci_chan_sent: chan ffff88020d60b1c0 quote 10
[69713.819104] [8909] hci_sched_le: chan ffff88020d60b1c0 skb ffff88005157c100 len 15 priority 7
[69713.819106] [8909] hci_send_frame: hci0 type 2 len 15
[69713.819108] [8909] hci_send_to_monitor: hdev ffff88021f0c7000 len 15
[69713.819119] [8909] hci_chan_sent: hci0
[69713.819121] [8909] hci_prio_recalculate: hci0
[69713.819123] [8909] process_pending_rx:
[69713.819226] [6450] hci_sock_recvmsg: sock ffff88005e758780, sk ffff88010323d400
...
[69713.822022] [6450] l2cap_sock_accept: sk ffff880160356000 timeo 0
[69713.822024] [6450] bt_accept_dequeue: parent ffff880160356000
[69713.822026] [6450] bt_accept_unlink: sk ffff88005ede5800 state 1
[69713.822028] [6450] l2cap_sock_accept: new socket ffff88005ede5800
[69713.822368] [6450] l2cap_sock_getname: sock ffff8800941ab700, sk ffff88005ede5800
[69713.822375] [6450] l2cap_sock_getsockopt: sk ffff88005ede5800
[69713.822383] [6450] l2cap_sock_getname: sock ffff8800941ab700, sk ffff88005ede5800
[69713.822414] [6450] bt_sock_poll: sock ffff8800941ab700, sk ffff88005ede5800
...
[69713.823255] [6450] l2cap_sock_getname: sock ffff8800941ab700, sk ffff88005ede5800
[69713.823259] [6450] l2cap_sock_getsockopt: sk ffff88005ede5800
[69713.824322] [6450] l2cap_sock_getname: sock ffff8800941ab700, sk ffff88005ede5800
[69713.824330] [6450] l2cap_sock_getsockopt: sk ffff88005ede5800
[69713.825029] [6450] bt_sock_poll: sock ffff88005e758500, sk ffff88010323b800
...
[69713.825187] [6450] l2cap_sock_sendmsg: sock ffff8800941ab700, sk ffff88005ede5800
[69713.825189] [6450] bt_sock_wait_ready: sk ffff88005ede5800
[69713.825192] [6450] l2cap_create_basic_pdu: chan ffff88005ede2c00 len 3
[69713.825196] [6450] l2cap_do_send: chan ffff88005ede2c00, skb ffff880160b0b500 len 7 priority 0
[69713.825199] [6450] hci_send_acl: hci0 chan ffff88020d60b1c0 flags 0x0000
[69713.825201] [6450] hci_queue_acl: hci0 nonfrag skb ffff880160b0b500 len 11
[69713.825210] [8909] hci_tx_work: hci0 acl 9 sco 8 le 0
[69713.825213] [8909] hci_sched_acl: hci0
[69713.825214] [8909] hci_sched_sco: hci0
[69713.825216] [8909] hci_sched_esco: hci0
[69713.825217] [8909] hci_sched_le: hci0
[69713.825219] [8909] hci_chan_sent: hci0
[69713.825221] [8909] hci_chan_sent: chan ffff88020d60b1c0 quote 9
[69713.825223] [8909] hci_sched_le: chan ffff88020d60b1c0 skb ffff880160b0b500 len 11 priority 0
[69713.825225] [8909] hci_send_frame: hci0 type 2 len 11
[69713.825227] [8909] hci_send_to_monitor: hdev ffff88021f0c7000 len 11
[69713.825242] [8909] hci_chan_sent: hci0
[69713.825253] [5949] hci_sock_recvmsg: sock ffff8800941a9680, sk ffff88012bf4d000
[69713.825253] [8909] hci_prio_recalculate: hci0
[69713.825292] [5949] hci_sock_recvmsg: sock ffff8800941a9680, sk ffff88012bf4d000
[69713.825768] [6450] bt_sock_poll: sock ffff88005e758500, sk ffff88010323b800
...
[69713.866902] [8909] hci_rx_work: hci0
[69713.866921] [8909] hci_send_to_monitor: hdev ffff88021f0c7000 len 7
[69713.866928] [8909] hci_rx_work: hci0 Event packet
[69713.866931] [8909] hci_num_comp_pkts_evt: hci0 num_hndl 1
[69713.866937] [8909] hci_tx_work: hci0 acl 9 sco 8 le 0
[69713.866939] [5949] hci_sock_recvmsg: sock ffff8800941a9680, sk ffff88012bf4d000
[69713.866940] [8909] hci_sched_acl: hci0
...
[69713.866944] [8909] hci_sched_le: hci0
[69713.866953] [8909] hci_chan_sent: hci0
[69713.866997] [5949] hci_sock_recvmsg: sock ffff8800941a9680, sk ffff88012bf4d000
[69713.867840] [28074] hci_rx_work: hci0
[69713.867844] [28074] hci_send_to_monitor: hdev ffff88021f0c7000 len 7
[69713.867850] [28074] hci_rx_work: hci0 Event packet
[69713.867853] [28074] hci_num_comp_pkts_evt: hci0 num_hndl 1
[69713.867857] [5949] hci_sock_recvmsg: sock ffff8800941a9680, sk ffff88012bf4d000
[69713.867858] [28074] hci_tx_work: hci0 acl 10 sco 8 le 0
[69713.867860] [28074] hci_sched_acl: hci0
[69713.867861] [28074] hci_sched_sco: hci0
[69713.867862] [28074] hci_sched_esco: hci0
[69713.867863] [28074] hci_sched_le: hci0
[69713.867865] [28074] hci_chan_sent: hci0
[69713.867888] [5949] hci_sock_recvmsg: sock ffff8800941a9680, sk ffff88012bf4d000
[69714.145661] [8909] hci_rx_work: hci0
[69714.145666] [8909] hci_send_to_monitor: hdev ffff88021f0c7000 len 10
[69714.145676] [8909] hci_rx_work: hci0 ACL data packet
[69714.145679] [8909] hci_acldata_packet: hci0 len 6 handle 0x002d flags 0x0002
[69714.145681] [8909] hci_conn_enter_active_mode: hcon ffff88021f65a000 mode 0
[69714.145683] [8909] l2cap_recv_acldata: conn ffff880221005c00 len 6 flags 0x2
[69714.145693] [8909] l2cap_recv_frame: len 2, cid 0x0006
[69714.145696] [8909] hci_send_to_control: len 14
[69714.145710] [8909] smp_chan_destroy:
[69714.145713] [8909] pairing_complete: status 3
[69714.145714] [8909] cmd_complete: sock ffff88010323ac00
[69714.145717] [8909] hci_conn_drop: hcon ffff88021f65a000 orig refcnt 3
[69714.145719] [5949] hci_sock_recvmsg: sock ffff8800941a9680, sk ffff88012bf4d000
[69714.145720] [6450] bt_sock_poll: sock ffff88005e758500, sk ffff88010323b800
[69714.145722] [6515] hci_sock_recvmsg: sock ffff88005e75a080, sk ffff88010323ac00
[69714.145724] [6450] bt_sock_poll: sock ffff8801db6b4f00, sk ffff880160351c00
...
[69714.145735] [6515] hci_sock_recvmsg: sock ffff88005e75a080, sk ffff88010323ac00
[69714.145737] [8909] hci_conn_drop: hcon ffff88021f65a000 orig refcnt 2
[69714.145739] [8909] l2cap_conn_del: hcon ffff88021f65a000 conn ffff880221005c00, err 13
[69714.145740] [6450] bt_sock_poll: sock ffff8801db6b5400, sk ffff88021e775000
[69714.145743] [6450] bt_sock_poll: sock ffff8801db6b5e00, sk ffff880160356000
[69714.145744] [8909] l2cap_chan_hold: chan ffff88005ede2c00 orig refcnt 3
[69714.145746] [6450] bt_sock_poll: sock ffff8800941ab700, sk ffff88005ede5800
[69714.145748] [8909] l2cap_chan_del: chan ffff88005ede2c00, conn ffff880221005c00, err 13
[69714.145749] [8909] l2cap_chan_put: chan ffff88005ede2c00 orig refcnt 4
[69714.145751] [8909] hci_conn_drop: hcon ffff88021f65a000 orig refcnt 1
[69714.145754] [6450] bt_sock_poll: sock ffff8800941ab700, sk ffff88005ede5800
[69714.145756] [8909] l2cap_chan_put: chan ffff88005ede2c00 orig refcnt 3
[69714.145759] [8909] hci_chan_del: hci0 hcon ffff88021f65a000 chan ffff88020d60b1c0
[69714.145766] [5949] hci_sock_recvmsg: sock ffff8800941a9680, sk ffff88012bf4d000
[69714.145787] [6515] hci_sock_release: sock ffff88005e75a080 sk ffff88010323ac00
[69714.146002] [6450] hci_sock_recvmsg: sock ffff88005e758780, sk ffff88010323d400
[69714.150795] [6450] l2cap_sock_release: sock ffff8800941ab700, sk ffff88005ede5800
[69714.150799] [6450] l2cap_sock_shutdown: sock ffff8800941ab700, sk ffff88005ede5800
[69714.150802] [6450] l2cap_chan_close: chan ffff88005ede2c00 state BT_CLOSED
[69714.150805] [6450] l2cap_sock_kill: sk ffff88005ede5800 state BT_CLOSED
[69714.150806] [6450] l2cap_chan_put: chan ffff88005ede2c00 orig refcnt 2
[69714.150808] [6450] l2cap_sock_destruct: sk ffff88005ede5800
[69714.150809] [6450] l2cap_chan_put: chan ffff88005ede2c00 orig refcnt 1
[69714.150811] [6450] l2cap_chan_destroy: chan ffff88005ede2c00
[69714.150970] [6450] bt_sock_poll: sock ffff88005e758500, sk ffff88010323b800
...
[69714.151991] [8909] hci_conn_drop: hcon ffff88021f65a000 orig refcnt 0
[69716.150339] [8909] hci_conn_timeout: hcon ffff88021f65a000 state BT_CONNECTED, refcnt -1

Signed-off-by: Lukasz Rymanowski <lukasz.rymanowski@tieto.com>
Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
2014-06-20 13:53:54 +02:00
Johan Hedberg
2ed8f65ca2 Bluetooth: Fix rejecting pairing in case of insufficient capabilities
If we need an MITM protected connection but the local and remote IO
capabilities cannot provide it we should reject the pairing attempt in
the appropriate way. This patch adds the missing checks for such a
situation to the smp_cmd_pairing_req() and smp_cmd_pairing_rsp()
functions.

Signed-off-by: Johan Hedberg <johan.hedberg@intel.com>
Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
2014-06-20 13:53:48 +02:00
Johan Hedberg
581370cc74 Bluetooth: Refactor authentication method lookup into its own function
We'll need to do authentication method lookups from more than one place,
so refactor the lookup into its own function.

Signed-off-by: Johan Hedberg <johan.hedberg@intel.com>
Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
2014-06-20 13:53:42 +02:00
Johan Hedberg
c7262e711a Bluetooth: Fix overriding higher security level in SMP
When we receive a pairing request or an internal request to start
pairing we shouldn't blindly overwrite the existing pending_sec_level
value as that may actually be higher than the new one. This patch fixes
the SMP code to only overwrite the value in case the new one is higher
than the old.

Signed-off-by: Johan Hedberg <johan.hedberg@intel.com>
Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
2014-06-20 13:53:38 +02:00
Marcin Kraglak
92d1372e1a Bluetooth: Allow change security level on ATT_CID in slave role
Kernel supports SMP Security Request so don't block increasing security
when we are slave.

Signed-off-by: Marcin Kraglak <marcin.kraglak@tieto.com>
Acked-by: Johan Hedberg <johan.hedberg@intel.com>
Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
Cc: stable@vger.kernel.org
2014-06-13 14:36:39 +02:00
Johan Hedberg
c73f94b8c0 Bluetooth: Fix locking of hdev when calling into SMP code
The SMP code expects hdev to be unlocked since e.g. crypto functions
will try to (re)lock it. Therefore, we need to release the lock before
calling into smp.c from mgmt.c. Without this we risk a deadlock whenever
the smp_user_confirm_reply() function is called.

Signed-off-by: Johan Hedberg <johan.hedberg@intel.com>
Tested-by: Lukasz Rymanowski <lukasz.rymanowski@tieto.com>
Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
Cc: stable@vger.kernel.org
2014-06-13 13:32:29 +02:00
Jukka Taimisto
7ab56c3a6e Bluetooth: Fix deadlock in l2cap_conn_del()
A deadlock occurs when PDU containing invalid SMP opcode is received on
Security Manager Channel over LE link and conn->pending_rx_work worker
has not run yet.

When LE link is created l2cap_conn_ready() is called and before
returning it schedules conn->pending_rx_work worker to hdev->workqueue.
Incoming data to SMP fixed channel is handled by l2cap_recv_frame()
which calls smp_sig_channel() to handle the SMP PDU. If
smp_sig_channel() indicates failure l2cap_conn_del() is called to delete
the connection. When deleting the connection, l2cap_conn_del() purges
the pending_rx queue and calls flush_work() to wait for the
pending_rx_work worker to complete.

Since incoming data is handled by a worker running from the same
workqueue as the pending_rx_work is being scheduled on, we will deadlock
on waiting for pending_rx_work to complete.

This patch fixes the deadlock by calling cancel_work_sync() instead of
flush_work().

Signed-off-by: Jukka Taimisto <jtt@codenomicon.com>
Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
Cc: stable@vger.kernel.org
2014-06-13 13:32:26 +02:00
Johan Hedberg
f8680f128b Bluetooth: Reuse hci_stop_discovery function when cleaning up HCI state
When cleaning up the HCI state as part of the power-off procedure we can
reuse the hci_stop_discovery() function instead of explicitly sending
HCI command related to discovery. The added benefit of this is that it
takes care of canceling name resolving and inquiry which were not
previously covered by the code.

Signed-off-by: Johan Hedberg <johan.hedberg@intel.com>
Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
Cc: stable@vger.kernel.org
2014-06-13 13:32:23 +02:00
Johan Hedberg
21a60d307d Bluetooth: Refactor discovery stopping into its own function
We'll need to reuse the same logic for stopping discovery also when
cleaning up HCI state when powering off. This patch refactors the code
out to its own function that can later (in a subsequent patch) be used
also for the power off case.

Signed-off-by: Johan Hedberg <johan.hedberg@intel.com>
Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
Cc: stable@vger.kernel.org
2014-06-13 13:32:20 +02:00
Johan Hedberg
50143a433b Bluetooth: Fix indicating discovery state when canceling inquiry
When inquiry is canceled through the HCI_Cancel_Inquiry command there is
no Inquiry Complete event generated. Instead, all we get is the command
complete for the HCI_Inquiry_Cancel command. This means that we must
call the hci_discovery_set_state() function from the respective command
complete handler in order to ensure that user space knows the correct
discovery state.

Signed-off-by: Johan Hedberg <johan.hedberg@intel.com>
Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
Cc: stable@vger.kernel.org
2014-06-13 13:32:16 +02:00
Johan Hedberg
fff3490f47 Bluetooth: Fix setting correct authentication information for SMP STK
When we store the STK in slave role we should set the correct
authentication information for it. If the pairing is producing a HIGH
security level the STK is considered authenticated, and otherwise it's
considered unauthenticated. This patch fixes the value passed to the
hci_add_ltk() function when adding the STK on the slave side.

Signed-off-by: Johan Hedberg <johan.hedberg@intel.com>
Tested-by: Marcin Kraglak <marcin.kraglak@tieto.com>
Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
Cc: stable@vger.kernel.org
2014-06-13 13:30:48 +02:00
Johan Hedberg
4ad51a75c7 Bluetooth: Add clarifying comment for conn->auth_type
When responding to an IO capability request when we're the initiators of
the pairing we will not yet have the remote IO capability information.
Since the conn->auth_type variable is treated as an "absolute"
requirement instead of a hint of what's needed later in the user
confirmation request handler it's important that it doesn't have the
MITM bit set if there's any chance that the remote device doesn't have
the necessary IO capabilities.

This patch adds a clarifying comment so that conn->auth_type is left
untouched in this scenario.

Signed-off-by: Johan Hedberg <johan.hedberg@intel.com>
Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
2014-06-13 13:30:45 +02:00
Johan Hedberg
ba15a58b17 Bluetooth: Fix SSP acceptor just-works confirmation without MITM
From the Bluetooth Core Specification 4.1 page 1958:

"if both devices have set the Authentication_Requirements parameter to
one of the MITM Protection Not Required options, authentication stage 1
shall function as if both devices set their IO capabilities to
DisplayOnly (e.g., Numeric comparison with automatic confirmation on
both devices)"

So far our implementation has done user confirmation for all just-works
cases regardless of the MITM requirements, however following the
specification to the word means that we should not be doing confirmation
when neither side has the MITM flag set.

Signed-off-by: Johan Hedberg <johan.hedberg@intel.com>
Tested-by: Szymon Janc <szymon.janc@tieto.com>
Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
Cc: stable@vger.kernel.org
2014-06-13 13:30:42 +02:00
Johan Hedberg
e694788d73 Bluetooth: Fix check for connection encryption
The conn->link_key variable tracks the type of link key in use. It is
set whenever we respond to a link key request as well as when we get a
link key notification event.

These two events do not however always guarantee that encryption is
enabled: getting a link key request and responding to it may only mean
that the remote side has requested authentication but not encryption. On
the other hand, the encrypt change event is a certain guarantee that
encryption is enabled. The real encryption state is already tracked in
the conn->link_mode variable through the HCI_LM_ENCRYPT bit.

This patch fixes a check for encryption in the hci_conn_auth function to
use the proper conn->link_mode value and thereby eliminates the chance
of a false positive result.

Signed-off-by: Johan Hedberg <johan.hedberg@intel.com>
Signed-off-by: Marcel Holtmann <marcel@holtmann.org>
Cc: stable@vger.kernel.org
2014-06-13 13:30:39 +02:00